CN104107848B - Round straightening process of numerical control round straightener - Google Patents

Round straightening process of numerical control round straightener Download PDF

Info

Publication number
CN104107848B
CN104107848B CN201310403535.9A CN201310403535A CN104107848B CN 104107848 B CN104107848 B CN 104107848B CN 201310403535 A CN201310403535 A CN 201310403535A CN 104107848 B CN104107848 B CN 104107848B
Authority
CN
China
Prior art keywords
round
workpiece
set round
barrel
under
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201310403535.9A
Other languages
Chinese (zh)
Other versions
CN104107848A (en
Inventor
赵非平
李森林
赵军
鲁世红
金卫东
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nantong Chaoli Rolling Machine Producing Co Ltd
Original Assignee
Nantong Chaoli Rolling Machine Producing Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Nantong Chaoli Rolling Machine Producing Co Ltd filed Critical Nantong Chaoli Rolling Machine Producing Co Ltd
Priority to CN201310403535.9A priority Critical patent/CN104107848B/en
Publication of CN104107848A publication Critical patent/CN104107848A/en
Application granted granted Critical
Publication of CN104107848B publication Critical patent/CN104107848B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Shaping Metal By Deep-Drawing, Or The Like (AREA)
  • Forging (AREA)

Abstract

The invention relates to the technical field of round straightening of plate bending rolls, in particular to a round straightening process of a numerical control round straightener. A high-accuracy sensor is mounted on the numerical control round straightener, used for accurately measuring the position of an upper roll, and connected with a PLC (programmable logic controller); through built-in programs of the PLC, all round straightening parameters are calculated, running statuses are fed back, process action commands are transmitted, and accordingly high-accuracy round straightening of cylinder workpieces is performed in a numerical control manner. The round straightening process is convenient to operate, the programs can calculate straightening amount accurately in real time by input of cylinder workpiece data, basic parameters of the numerical control round straightener and basic performance parameters of materials, related data are generated, all action steps of the round straightener are controlled, and accordingly round straightening accuracy is guaranteed, working efficiency is improved, labor intensity is reduced, qualified rate of products is inc reased, and meanwhile production cost is lowered as well.

Description

The set round technique of numerical control set round machine
Technical field:
The present invention relates to the set round technical field of veneer reeling machine, be specifically related to the set round technique of numerical control set round machine.
Background technology:
Set round machine be usually the lower roll that by two equal diameters and is parallel to each other and one between two lower rolls and with under Roll out capable moving up and down upper roller to be constituted, realize anon-normal cylinder workpiece by pressing under upper roller to rotate with two lower rolls Set round.When operation control upper and lower roll carries out set round to anon-normal cylinder workpiece, by adjusting upper roller and two lower roll centrages Distance, press under upper roller, adapt to the set round of various different size workpiece for barrel.The relevant supplemental characteristic of its upper and lower roll action, work Process etc., are only that the experience with technical staff determines.For different-diameter, different materials, different cylinder wall thickness and not With situations such as circularity requirements, utilize traditional three rolls plate bending machine and process to carry out set round, it cannot be guaranteed that product quality Requirement, production efficiency requires and Automated assembly requirement.
Summary of the invention:
It is an object of the invention to provide the set round technique of a kind of numerical control set round machine, on numerical control set round machine, installation one is high-precision Degree sensor, in order to accurately to measure the position of the upper roller of set round machine, sensor is connected with PLC.For reaching on upper roller The high-accuracy control of lower movement, upper roller elevating drive mechanism can use ball wire bar pair, and as used hydraulic drive, system should possess Automatic flat-adjustable function;Calculated each set round parameter, back-to-back running state by PLC plug-in, transmit each technological action Instruction, reaches digital control scheme and carries out the high accuracy set round of workpiece for barrel.It has easy and simple to handle, by input workpiece for barrel number According to, numerical control set round machine basic parameter and material fundamental performance parameter, program can the most accurately calculate and control set round machine each Action step, thus ensure that set round is accurate, improve work efficiency, reduce labor intensity, improve the qualification rate of product, reduce Generate this.
In order to solve the problem existing for background technology, the present invention is by the following technical solutions: numerical control set round machine set round Processing step is as follows:
First: total for upper roller volume under pressure being arranged and be divided into n interval, each interval is referred to as the passage of set round, and n interval is then There is n passage;
Second: the volume under pressure of each passage is set to x, this x can be set as equivalence as required, it is also possible to non-equivalence, no Each interval volume under pressure x of equivalent time sets the most respectively;
3rd: each passage arranges lower roll and drives the number of times of forward and reverse, and lower roll forward and reverse are once a week Phase, be so conducive to set round to shape, eliminate deformational stress, improve and correct precision;When cycle is " space ", represent when lower roll drives One-directional rotation, during set round, the periodicity of last passage should be greater than 1;
4th: the periodicity programmed instruction that PLC presses n passage, x volume under pressure and lower roll drive, press under upper roller and Lower roll drives to rotate and corrects anon-normal cylinder workpiece;
5th: when pressing rectification to reach " rectification maximum reduction " under upper roller, PLC sends program transportation instruction, Upper roller is pressed down, and upper roller reversely will be risen by n the passage originally set, in rising while set round and to applying Pressure unloads;
6th: on set round machine, roller rising or falling speed is relatively slow, sheet metal thickness is relatively thin and set round required precision is the most high In the case of, passage n may be set to 1, i.e. goes up and presses under roller or upper roller rises to stepless progressive and at the uniform velocity, implements the rectification to workpiece;
7th: after upper roller rises to non-corrective interval, PLC instruction frequency conversion motor accelerated service, roller in driving It is climbed to roller upper initial point h0Position, opens the tilting device in set round machine, exits set round workpiece for barrel, it is achieved that right The anon-normal cylinder full-automatic set round of workpiece high precision numerical control.
For effectively realizing set round machine numerical control, intelligent automation, PLC plug-in can be according to known parameters, computing Go out the related data of each action command, thus finally determine rectification maximum reduction, it is achieved be scientific and reasonable most preferably to workpiece for barrel Set round.
It is as follows that the plug-in of PLC calculates each correlation data calculation method:
(1), known parameters sets:
(1) set round machine basic parameter: upper roller diameter D1, lower roller diameter D2, two lower roller center distance a,
Upper roller upper initial point h0;
(2) workpiece for barrel basic parameter is corrected: thickness of slab t, cylinder internal diameter D (radius R).
(3) plate property basic parameter: sheet material yield strength σs, hardened material COEFFICIENT K0, and elasticity modulus of materials E etc.;
(2), determined by the operation program that PLC is built-in press under upper roller each state correct impulse stroke:
Line on the basis of the two lower roll lines of centres, point on the basis of the above roll shaft heart, at two lower rolls and upper roller, three rollers and workpiece Under tangent state:
(1), under theoretical positive round work status, the distance in the workpiece center of circle to two lower roll datum lines is H:
H = ( R + D 2 2 + t ) 2 - ( a 2 ) 2
(2), under theoretical positive round work status, the upper roll shaft heart is to distance h of two lower roll datum lines:
h = H - R + D 1 2
(3), under maximum reduction state, the distance in the virtual workpiece center of circle to two lower roll datum lines is H1
H 1 = ( R 1 + D 2 2 + t ) 2 - ( a 2 ) 2
(4), under maximum reduction state, the upper roll shaft heart is to distance h of two lower roll datum line lines1:
According to plastoelasticity principle, the theoretical radius of curvature R under maximum reduction state (before workpiece resilience)1, then press Following equation calculates h1:
h 1 = H 1 - R 1 + D 1 2 = ( R 1 + D 2 2 + t ) 2 - ( a 2 ) 2 - R 1 + D 1 2
(3), calculating rectification maximum reduction (correct amount) h ':
h′=h1-h0
Correct maximum reduction and refer to that roller is from upper initial point h0Pressing under position, cylinder produces deformation, the curvature after resilience Numerical value equal to drafts during positive round curvature.Correcting maximum reduction is a critically important and crucial numerical value, and numerical value is less than normal Correct not in place;Numerical value is bigger than normal, it will correcting excessively, two kinds of situations all can affect set round precision.
The present invention uses and arranges a PLC, PLC plug-in calculate each set round parameter, feedback fortune Row state, transmits the instruction of each technological action, reaches the digital control scheme high accuracy set round to workpiece for barrel.It has easy and simple to handle, By input workpiece for barrel data, numerical control set round machine basic parameter and material fundamental performance parameter, program can the most accurately be counted Calculate correct amount, generate related data, and control each action step of set round machine, thus ensure that set round is accurate, improve work effect Rate, reduces labor intensity, improves the qualification rate of product, also reduces generation originally simultaneously.
Accompanying drawing illustrates:
Fig. 1 is set round principle schematic of the present invention;
Reference is as follows:
The upper roller of 1--;2--lower roll;3--workpiece for barrel;R--workpiece radius;
Workpiece inflection interval radius of curvature during R1--maximum reduction;A--two lower roller center distance;
T--thickness of slab;The upper roller diameter of D1--;Roller diameter under D2--;
Under H--theory positive round work status, the workpiece center of circle is to the distance of two lower roll datum lines;
Under H1--maximum reduction state, the virtual workpiece center of circle is to the distance of two lower roll datum lines;
Under h--theory positive round work status, the upper roll shaft heart is to the distance of two lower roll datum lines;
Under h1--maximum reduction state, the upper roll shaft heart is to the distance of two lower roll datum line lines;
Detailed description of the invention:
Referring to Fig. 1, this detailed description of the invention is by the following technical solutions: numerical control set round machine set round processing step is as follows:
First: the upper total volume under pressure of roller 1 arranged and be divided into n interval, each interval is referred to as the passage of set round, and n interval Then there is n passage;
Second: the volume under pressure of each passage is set to x, this x can be set as equivalence as required, it is also possible to non-equivalence, no Each interval volume under pressure x of equivalent time sets the most respectively;
3rd: each passage arranges lower roll 2 and drives the number of times of forward and reverse, lower roll 2 forward and reverse to be once one In the cycle, be so conducive to set round to shape, eliminate deformational stress, improve and correct precision;When cycle is " space ", represent that lower roll 2 drives One-directional rotation time dynamic, during set round, the periodicity of last passage should be greater than 1;
4th: PLC presses the periodicity programmed instruction that n passage, x volume under pressure and lower roll 2 drive, and upper roller is pressed for 1 time Drive to rotate with lower roll 2 and anon-normal cylinder workpiece 3 is corrected;
5th: when the 1 time pressure rectification of upper roller reaches " rectification maximum reduction ", PLC sends program transportation instruction, Upper roller 1 is pressed down, and upper roller 1 is by reversely being risen by n the passage originally set, in rising while set round and to applying Pressure unload;
6th: on set round machine, roller 1 rising or falling speed is relatively slow, sheet metal thickness is relatively thin and set round required precision is the most high In the case of, passage n may be set to 1, i.e. goes up roller 1 time pressure or upper roller 1 rises to stepless progressive and at the uniform velocity, implement workpiece for barrel 3 Rectification;
7th: after upper roller rises to non-corrective interval, PLC instruction frequency conversion motor accelerated service, roller in driving It is climbed to roller upper initial point h0Position, opens the tilting device in set round machine, exits set round workpiece for barrel, it is achieved that right The anon-normal cylinder full-automatic set round of workpiece high precision numerical control.
For effectively realizing set round machine numerical control, intelligent automation, PLC plug-in can be according to known parameters, computing Go out the related data of each action command, thus finally determine rectification maximum reduction, it is achieved be scientific and reasonable most preferably to workpiece for barrel Set round.
Further, each correlation data calculation method of plug-in calculating of PLC is as follows:
(2), known parameters sets:
(1) set round machine basic parameter: upper roller diameter D1, lower roller diameter D2, two lower roller center distance a,
Upper roller upper initial point h0
(2) workpiece for barrel basic parameter is corrected: thickness of slab t, cylinder internal diameter D (radius R).
(3) plate property basic parameter: sheet material yield strength σs, hardened material COEFFICIENT K0, and elasticity modulus of materials E etc.;
(2), determined by the operation program that PLC is built-in press under upper roller each state correct impulse stroke:
Line on the basis of the two lower roll lines of centres, point on the basis of the above roll shaft heart, at two lower rolls and upper roller, three rollers and workpiece Under tangent state:
(1), under theoretical positive round work status, the distance in the workpiece center of circle to two lower roll datum lines is H:
H = ( R + D 2 2 + t ) 2 - ( a 2 ) 2
(2), under theoretical positive round work status, the upper roll shaft heart is to distance h of two lower roll datum lines:
h = H - R + D 1 2
(3), under maximum reduction state, the distance in the virtual workpiece center of circle to two lower roll datum lines is H1
H 1 = ( R 1 + D 2 2 + t ) 2 - ( a 2 ) 2
(4), under maximum reduction state, the upper roll shaft heart is to distance h of two lower roll datum line lines1:
According to plastoelasticity principle, the theoretical radius of curvature R under maximum reduction state (before workpiece resilience)1, then press Following equation calculates h1:
h 1 = H 1 - R 1 + D 1 2 = ( R 1 + D 2 2 + t ) 2 - ( a 2 ) 2 - R 1 + D 1 2
(3), calculating rectification maximum reduction (correct amount) h ':
h′=h1-h0
Correct maximum reduction and refer to that roller is from upper initial point h0Pressing under position, cylinder produces deformation, the curvature after resilience Numerical value equal to drafts during positive round curvature.Correcting maximum reduction is a critically important and crucial numerical value, and numerical value is less than normal Correct not in place;Numerical value is bigger than normal, it will correcting excessively, two kinds of situations all can affect set round precision.
The present invention arranges a high-precision sensor, this sensor and a PLC on set round machine and is connected, by this height Accurate sensor accurately measures the position of the upper roller of set round machine, the data recorded is real-time transmitted to PLC simultaneously;For Reaching the high-accuracy control moving up and down upper roller, the upper roller elevating drive mechanism being arranged on set round machine can use ball wire Bar, as used hydraulic drive, system should possess automatic flat-adjustable function;Then come by above-mentioned by the plug-in of PLC Computational methods calculate each set round parameter, back-to-back running state, transmit each technological action instruction, reach digital control scheme and carry out cylinder The high accuracy set round of body workpiece.
The present invention uses and arranges a PLC, PLC plug-in calculate each set round parameter, feedback fortune Row state, transmits the instruction of each technological action, reaches the digital control scheme high accuracy set round to workpiece for barrel.It has easy and simple to handle, By input workpiece for barrel data, numerical control set round machine basic parameter and material fundamental performance parameter, program can the most accurately be counted Calculate correct amount, generate related data, and control each action step of set round machine, thus ensure that set round is accurate, improve work effect Rate, reduces labor intensity, improves the qualification rate of product, also reduces generation originally simultaneously.
The above is only the better embodiment of the present invention, thus all according to the structure described in present patent application scope, The equivalence that feature and principle are done changes or modifies, in the range of being all included in the present patent application.

Claims (1)

1. the set round technique of numerical control set round machine, it is characterised in that: its set round processing step is as follows:
First: total for upper roller volume under pressure being arranged and be divided into n interval, each interval is referred to as the passage of set round, and then there is n in n interval Individual passage;
Second: the volume under pressure of each passage is set to x, this x is set as equivalence or non-equivalence as required, during non-equivalence under each interval Pressure amount x sets the most respectively;
3rd: each passage arranges lower roll and drives the number of times of forward and reverse, and lower roll forward and reverse are once a cycle, this Sample is conducive to set round to shape, and eliminates deformational stress, improves and corrects precision;When cycle is " space ", represent that lower roll is unidirectional when driving Rotating, during set round, the periodicity of last passage should be greater than 1;
4th: PLC presses the periodicity programmed instruction that n passage, x volume under pressure and lower roll drive, and presses and lower roll under upper roller Drive to rotate and workpiece for barrel is corrected;
5th: when pressing rectification to reach to correct maximum reduction under upper roller, PLC sends program transportation instruction, and upper roller is not Pressing down, upper roller reversely will be risen by n the passage originally set, in rising while set round and to apply pressure enter Row unloading;
6th: on set round machine, roller rising or falling speed is relatively slow, sheet metal thickness is relatively thin and set round required precision the highest in the case of, Passage n is set as 1, i.e. goes up and presses under roller or upper roller rises to stepless progressive and at the uniform velocity, implements the rectification to workpiece for barrel;
7th: after upper roller rises to non-corrective interval, PLC instruction frequency conversion motor accelerated service, in driving, roller is quick Rise to roller upper initial point h0Position, opens the tilting device in set round machine, exits set round workpiece for barrel, it is achieved that to cylinder The full-automatic set round of workpiece high precision numerical control;
PLC plug-in, according to known parameters, calculates the related data of each action command, thus finally determines rectification Maximum reduction, it is achieved set round optimal to workpiece for barrel;
It is as follows that the plug-in of PLC calculates each correlation data calculation method:
(1), known parameters sets:
(1) set round machine basic parameter: upper roller diameter D1, lower roller diameter D2, two lower roller center distance a, upper roller upper initial point h0
(2) workpiece for barrel basic parameter: thickness of slab t, cylinder internal diameter D, radius R;
(3) plate property basic parameter: sheet material yield strength σs, hardened material COEFFICIENT K0, and elasticity modulus of materials E;
(2), determined by the operation program that PLC is built-in press under upper roller each state correct impulse stroke:
Line on the basis of the two lower roll lines of centres, point on the basis of the above roll shaft heart, at two lower rolls and upper roller, three rollers and workpiece for barrel Under tangent state:
(1), under theoretical rectification workpiece for barrel state, the distance in the workpiece for barrel center of circle to two lower roll datum lines is H:
(2), under theoretical rectification workpiece for barrel state, the upper roll shaft heart is to distance h of two lower roll datum lines:
(3), under maximum reduction state, before workpiece for barrel resilience, the theoretical radius of curvature under maximum reduction state is R1, virtual The workpiece for barrel center of circle is H to the distance of two lower roll datum lines1:
(4), under maximum reduction state, the upper roll shaft heart is to distance h of two lower roll datum line lines1:
According to plastoelasticity principle, then calculate h by following equation1:
(3), calculating rectification maximum reduction h ':
H '=h1-h0
CN201310403535.9A 2013-09-09 2013-09-09 Round straightening process of numerical control round straightener Active CN104107848B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201310403535.9A CN104107848B (en) 2013-09-09 2013-09-09 Round straightening process of numerical control round straightener

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201310403535.9A CN104107848B (en) 2013-09-09 2013-09-09 Round straightening process of numerical control round straightener

Publications (2)

Publication Number Publication Date
CN104107848A CN104107848A (en) 2014-10-22
CN104107848B true CN104107848B (en) 2017-01-11

Family

ID=51704945

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201310403535.9A Active CN104107848B (en) 2013-09-09 2013-09-09 Round straightening process of numerical control round straightener

Country Status (1)

Country Link
CN (1) CN104107848B (en)

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105798078B (en) * 2016-03-28 2018-04-20 辽宁大金重工股份有限公司 The antidote of wind-power tower flange flatness and introversion value
CN106001183B (en) * 2016-07-07 2017-09-15 南通超力卷板机制造有限公司 Multiaxis periphery is retracted cyclic bending numerical control set round machine
CN109304383B (en) * 2018-11-28 2020-03-06 西南铝业(集团)有限责任公司 Roundness correction method for large aluminum alloy ring piece
CN109483179B (en) * 2019-01-02 2021-02-12 中交天津航道局有限公司 Processing technology of high-strength steel coil pipe
CN110860588B (en) * 2019-10-31 2020-11-24 中船重工鹏力(南京)智能装备***有限公司 Automatic edge folding and pressing equipment for sheet metal shell of inner barrel of water heater and forming method
CN111451332A (en) * 2019-12-20 2020-07-28 南通超力卷板机制造有限公司 Roundness correction method for cylinder formed by roll bending of three-roller plate bending machine

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5193376A (en) * 1991-10-15 1993-03-16 Weitl Gary E Machine and method for repairing damaged grain aeration pipes
RU2202426C2 (en) * 2001-05-03 2003-04-20 Акционерное общество открытого типа "Тяжпрессмаш" Method for making shells in four-roll and axially symmetrical three-roll sheet bending machines
CN201049365Y (en) * 2007-06-16 2008-04-23 王行山 Digital display lapping machine
CN201618760U (en) * 2010-02-10 2010-11-03 青岛运城制版有限公司 Automatic circle calibration machine
CN102240705A (en) * 2011-04-22 2011-11-16 大连春洋重工机械制造有限公司 Large three-roller plate rolling machine with underlying pull-down hydraulic cylinder
CN202861054U (en) * 2012-09-20 2013-04-10 南通超力卷板机制造有限公司 High-precision numerical control round setting machine

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5193376A (en) * 1991-10-15 1993-03-16 Weitl Gary E Machine and method for repairing damaged grain aeration pipes
RU2202426C2 (en) * 2001-05-03 2003-04-20 Акционерное общество открытого типа "Тяжпрессмаш" Method for making shells in four-roll and axially symmetrical three-roll sheet bending machines
CN201049365Y (en) * 2007-06-16 2008-04-23 王行山 Digital display lapping machine
CN201618760U (en) * 2010-02-10 2010-11-03 青岛运城制版有限公司 Automatic circle calibration machine
CN102240705A (en) * 2011-04-22 2011-11-16 大连春洋重工机械制造有限公司 Large three-roller plate rolling machine with underlying pull-down hydraulic cylinder
CN202861054U (en) * 2012-09-20 2013-04-10 南通超力卷板机制造有限公司 High-precision numerical control round setting machine

Also Published As

Publication number Publication date
CN104107848A (en) 2014-10-22

Similar Documents

Publication Publication Date Title
CN104107848B (en) Round straightening process of numerical control round straightener
CN103003682B (en) Material testing machine
CN103778322B (en) Method for controlling depth of sliding block of upper die of bending machine
CN101644921A (en) Improved method for designing numerical control bending of plate
CN102744265A (en) Strip steel C warping control method
CN104014613B (en) A kind of non-contact laser on-line checking bar linearity mechanism and detection method
CN103706671B (en) Three machine one heights are joined the accurate bin aligning of type feeder
CN105750336A (en) Method for improving preset precision of rolling force of Sendzimir rolling mills in unstable-state rolling phases
CN108637038B (en) Full-automatic barrel straightener and straightening process
KR101350322B1 (en) Appartus for bending steel panel
JP2515217B2 (en) Method and apparatus for bending metallic material by bend-ing-roll
CN203649072U (en) Plate rolling machine with displacement sensor
AU2013101726A4 (en) Straightening round process of numerical control straightening round machine
CN103658247B (en) High precision numerical control set round machine
CN105328097B (en) The method that helix cylindrical gear floating die assembly structure is determined based on speed difference
CN105013895B (en) Torsional mode four-roll bending machine
CN208366286U (en) Aluminum dipping form version laser detection system
CN205571056U (en) Full -automatic mechanical tubes straightening machine
KR20120133196A (en) Control Method of Electro Servo Press
CN103537485A (en) Cold rolling strip steel plate shape dynamic variable gain control method
JPH01299711A (en) Press for intelligent bending
CN202725688U (en) Lifting type steel pipe straightening machine
JP3085272U (en) High performance machine with reduced setup time for programmed sheet bending
CN104588493B (en) Set round device and control method thereof
CN105458038B (en) Board quality on-line calculation method during high-speed numeric control plate stamping

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant
EE01 Entry into force of recordation of patent licensing contract
EE01 Entry into force of recordation of patent licensing contract

Application publication date: 20141022

Assignee: NANTONG TELI FORGING MACHINE CO.,LTD.

Assignor: Nantong Chaoli Rolling Machine Producing Co.,Ltd.

Contract record no.: 2018320010046

Denomination of invention: Round straightening process of numerical control round straightener

Granted publication date: 20170111

License type: Common License

Record date: 20180606

EE01 Entry into force of recordation of patent licensing contract
EE01 Entry into force of recordation of patent licensing contract

Application publication date: 20141022

Assignee: JIANGSU JIANGHAI MACHINE TOOLS GROUP Co.,Ltd.

Assignor: Nantong Chaoli Rolling Machine Producing Co.,Ltd.

Contract record no.: 2018320010048

Denomination of invention: Round straightening process of numerical control round straightener

Granted publication date: 20170111

License type: Common License

Record date: 20180619

PE01 Entry into force of the registration of the contract for pledge of patent right
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of invention: Round straightening process of numerical control round straightener

Effective date of registration: 20190401

Granted publication date: 20170111

Pledgee: Bank of China Limited by Share Ltd. Haian branch

Pledgor: Nantong Chaoli Rolling Machine Producing Co.,Ltd.

Registration number: 2019320000159

PC01 Cancellation of the registration of the contract for pledge of patent right
PC01 Cancellation of the registration of the contract for pledge of patent right

Date of cancellation: 20220425

Granted publication date: 20170111

Pledgee: Bank of China Limited by Share Ltd. Haian branch

Pledgor: Nantong Chaoli Rolling Machine Producing Co.,Ltd.

Registration number: 2019320000159

PE01 Entry into force of the registration of the contract for pledge of patent right
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of invention: Rounding process of CNC rounding machine

Effective date of registration: 20220621

Granted publication date: 20170111

Pledgee: Agricultural Bank of China Limited Hai'an sub branch

Pledgor: Nantong Chaoli Rolling Machine Producing Co.,Ltd.

Registration number: Y2022990000340